{"title":"Determination of Ultimate Functional Clearances of a Plain Bearing under Hydrodynamic Lubrication Conditions","authors":"O. A. Leonov, N. Zh. Shkaruba, Yu. G. Vergazova","doi":"10.3103/S1068366624700338","DOIUrl":null,"url":null,"abstract":"<p>The article discusses the factors affecting the operation of sliding bearings. It is shown that based on the fundamental principles of hydrodynamic lubrication theory, transitioning from the formula characterizing the load-carrying capacity of the lubricant layer in sliding bearings to the parameters of oil film thickness and clearance allows for the derivation of expressions to determine functional clearances within which the bearing will operate under conditions of hydrodynamic friction. As a result of the calculations conducted for the sliding bearing of the conveyor drive reducer the limiting functional clearances were defined for the use of bushings of various lengths in accordance with GOST ISO 4379–2006. A rational length for the sliding bearing trunnion is justified based on the value of the maximum functional clearance and its influence on the deviation of the center distance in the gear transmission of the reducer. A new <i>H</i>8/<i>f</i>7 fit is proposed instead of the recommended <i>H</i>8/<i>g</i>7 and <i>H</i>8/<i>e</i>7 fits according to GOST ISO 4379–2006, as this will ensure the presence of a hydrodynamic wedge at the beginning of operation and provide the most rational material reserve for wear. The practical significance of the research lies in the applicability of the proposed approach in the design of sliding bearings operating under conditions of hydrodynamic lubrication, aimed at determining the rational length and fit of the mating elements in the bearing assembly.</p>","PeriodicalId":633,"journal":{"name":"Journal of Friction and Wear","volume":"45 4","pages":"223 - 227"},"PeriodicalIF":0.5000,"publicationDate":"2024-12-12","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Friction and Wear","FirstCategoryId":"5","ListUrlMain":"https://link.springer.com/article/10.3103/S1068366624700338","RegionNum":4,"RegionCategory":"工程技术","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"ENGINEERING, MECHANICAL","Score":null,"Total":0}
引用次数: 0
Abstract
The article discusses the factors affecting the operation of sliding bearings. It is shown that based on the fundamental principles of hydrodynamic lubrication theory, transitioning from the formula characterizing the load-carrying capacity of the lubricant layer in sliding bearings to the parameters of oil film thickness and clearance allows for the derivation of expressions to determine functional clearances within which the bearing will operate under conditions of hydrodynamic friction. As a result of the calculations conducted for the sliding bearing of the conveyor drive reducer the limiting functional clearances were defined for the use of bushings of various lengths in accordance with GOST ISO 4379–2006. A rational length for the sliding bearing trunnion is justified based on the value of the maximum functional clearance and its influence on the deviation of the center distance in the gear transmission of the reducer. A new H8/f7 fit is proposed instead of the recommended H8/g7 and H8/e7 fits according to GOST ISO 4379–2006, as this will ensure the presence of a hydrodynamic wedge at the beginning of operation and provide the most rational material reserve for wear. The practical significance of the research lies in the applicability of the proposed approach in the design of sliding bearings operating under conditions of hydrodynamic lubrication, aimed at determining the rational length and fit of the mating elements in the bearing assembly.
本文讨论了影响滑动轴承运行的因素。结果表明,根据流体动力润滑理论的基本原理,从表征滑动轴承润滑层承载能力的公式过渡到油膜厚度和间隙参数,可以推导出确定轴承在流体动力摩擦条件下运行的功能间隙的表达式。根据GOST ISO 4379-2006,对输送机驱动减速器滑动轴承进行了计算,确定了不同长度衬套使用的极限功能间隙。根据最大功能间隙值及其对减速器齿轮传动中心距偏差的影响,确定了滑动轴承耳轴的合理长度。根据GOST ISO 4379-2006,建议采用新的H8/f7配合代替推荐的H8/g7和H8/e7配合,因为这将确保在操作开始时存在流体动力楔,并提供最合理的磨损材料储备。该研究的实际意义在于,所提出的方法适用于在流体动力润滑条件下工作的滑动轴承的设计,旨在确定轴承组件中配合元件的合理长度和配合。
期刊介绍:
Journal of Friction and Wear is intended to bring together researchers and practitioners working in tribology. It provides novel information on science, practice, and technology of lubrication, wear prevention, and friction control. Papers cover tribological problems of physics, chemistry, materials science, and mechanical engineering, discussing issues from a fundamental or technological point of view.